• 제목/요약/키워드: One way FSI

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유동-구조 연성해석 기법을 이용한 풍력발전시스템 해석 (Analysis of Wind Turbine system using Fluid Structure Diteraction)

  • 김윤기;김경천
    • 한국가시화정보학회:학술대회논문집
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    • 한국가시화정보학회 2006년도 추계학술대회 논문집
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    • pp.141-144
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    • 2006
  • In this study, one-way fluid structure interaction analysis(FSI) on wind turbine blade was performed. Both a quantitative fluid analysis on 3-bladed wind turbine and a structural analysis using the surface pressure data resulting from fluid analysis were carried out. Streamlines and angle of attack was easily acquired from analysis results, we showed the inlet velocity that the stall begins to occur. In the structural analysis, structural displacement and maximum stress of the two comparative models was calculated. The location that has maximum stress was found. The pressure difference between back and front part of the blade increases as the inlet velocity increase. The torque and maximum with regard to inlet velocity was also presented.

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오일부 운전조건 변화에 따른 수소용 다이어프램 압축기의 성능예측에 대한 수치해석 (A Numerical Analysis on a Dependence of Hydrogen Diaphragm Compressor Performance on Hydraulic Oil Conditions)

  • 박현우;신영일;이영준;송주헌;장영준;전충환
    • 한국수소및신에너지학회논문집
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    • 제20권6호
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    • pp.471-478
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    • 2009
  • The specific some types of compressors are appropriate for a use in hydrogen gas station. Metal diaphragm type of hydrogen compressor is one of them, which can satisfy the critical requirements of maintaining gas purity and producing high pressure over 850 bar. The objective of this study is to investigate an characteristics of compression through two-way Fluid-Structure-Interaction (FSI) analysis as bulk modulus and initial volume of oil independently varies. Deflection of diaphragm, oil density, gas and oil pressure were analyzed during a certain period of compression process. According to the analysis results, bulk modulus and initial volume remarkably affected deflection of diaphragm, oil density, gas and oil pressure. The highest gas pressure were attained with the highest bulk modulus of $7e^9\;N/m^2$ and the lowest initial oil volume of 80 cc.

단순형태 세일의 변형에 대한 유체-구조 연성 해석 (Fluid-Structure Interaction Analysis on the Deformation of Simplified Yacht Sails)

  • 박세라;유재훈;송창용
    • 대한조선학회논문집
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    • 제50권1호
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    • pp.33-40
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    • 2013
  • Since most of yacht sails are made of thin fabric, they form cambered sail shape that can efficiently generate lift power by aerodynamic interaction and by external force delivered from supporting structures such as mast and boom. When the incident flow and external force alter in terms of volume or condition, the shape of sail also change. This deformation in shape has impact on the peripheral flow and aerodynamic interaction of the sail, and thus it is related to the deformation of the sail in shape again. Therefore, the precise optimization of aerodynamic performance of sail requires fluid-structure interaction (FSI) analysis. In this study, the simplified sail without camber was under experiment for one-way FSI that uses the result of flow analysis to the structural analysis as load condition in an attempt to fluid-structure interaction phenomenon. To confirm the validity of the analytical methods and the reliability of numerical computation, the difference in deformation by the number of finite element was compared. This study reproduced the boundary conditions that sail could have by rigs such as mast and boom and looked into the deformation of sail. Sail has non-linear deformation such as wrinkles because it is made of a thin fabric material. Thus non-linear structural analysis was conducted and the results were compared with those of analysis on elastic material.

다공성 패드를 갖는 챔버의 배열에 따른 공기 부상 테이블의 비접촉 부상 수준에 대한 연구 (Non-Contact Level on Air Levitation Table with Porous Chamber Array)

  • 김준현;정영석;이태걸;김태훈;정효재
    • 한국생산제조학회지
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    • 제22권6호
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    • pp.913-920
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    • 2013
  • This paper presents an applicable basic design that can configure non-contact levitation table for conveying a large sheet of glass. The suggested air levitation table consists of a series of air chambers with porous pads and fans as the conveyor system. The air supply chambers are arrayed to supply an adequately strong upward airflow for supporting the glass. Levitation is controlled by the size and discharge velocity, of the chamber arrays, as well as the glass supporting height. After pre-evaluation of the glass rigidity and the filer functional performance, a one-way fluid structure interface (FSI) analysis is performed for predicting pressure and deflection working of the 8G glass in the transverse and longitudinal directions, respectively. After comparing calculated levels of flatness of the glass, it determines the chamber array for the linear non-contact conveying motion.

4차산업혁명과 식품산업의 미래 (The fourth industrial revolution and the future of food industry)

  • 윤석후
    • 식품과학과 산업
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    • 제50권2호
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    • pp.60-73
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    • 2017
  • Recently, the whole world is facing an unprecedented moment of opportunity, so-called The Fourth Industrial Revolution. As emphasized in the World Economic Forum held in January of 2016 at Davos, the Fourth Industrial Revolution is not merely a changes of technological devices. The fundamental of the revolution is new, innovative, and visionary business models which change the whole systems dramatically. One of the greatest challenges is to feed an expected population of 9 billion by 2050 in a impactful way. The system should be sustainable as well as beneficial in improving the lives of people in the food chain along with the ecological health of environment. The technological advances of the Fourth Industrial Revolution are expected to improve our food system. The smart farm technology such as precision planting and irrigation techniques will improve the yields of food materials. The smart food transportation and logistics systems will substantially improve the safety and human nutrition. The adaptation the Fourth Industrial Revolution technology will induce the smart supply chains, smart production, and smart products in food industry due to its flexibility and standardization. This will lead the manufactures to adapt to customers' changing product specifications and traceable services in a timely manner.

수치해석을 이용한 어선용 수직축 풍력터빈의 기초연구 (A Fundamental Study on the Vertical-Axis Wind Turbine for Fishing Boat using Numerical Analysis)

  • 정광열;이영길;하윤진;강봉한;강대선
    • 대한조선학회논문집
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    • 제50권6호
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    • pp.365-372
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    • 2013
  • In this study, the flow characteristics and structural safety of a 500W class vertical-axis wind turbines(VAWT) for a fishing boat are investigated by numerical simulations. Guide vanes to increase the performance of the VAWT are investigated. And the best guide vane in the numerical simulations is applied to the VAWT. Also, modal analyses are performed to find out the natural frequencies of the VAWT, and the resonance safety of the VAWT is evaluated. The structural analysis of the VAWT is carried out by one-way FSI(Fluid Structure Interaction). And the results are used for the evaluation of structural safety according to IEC 61400-1 code. Finally, the possibility of the installation of the VAWT on the wheelhouse of a 9.77ton class fishing boat is checked. The results of the present research could be used as one of the fundamental data to design a VAWT for a fishing boat.

고체산화물 연료전지 단위셀의 열응력에 관한 연구 (Investigation of a Thermal Stress for the Unit Cell of a Solid Oxide Fuel Cell)

  • 김영진;박상균;노길태;김만응
    • Journal of Advanced Marine Engineering and Technology
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    • 제35권4호
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    • pp.414-420
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    • 2011
  • 평균전류밀도 0~2000 $A/m^2$ 의 운전범위에 대한 음극 지지형 고체산화물 연료전지의 단위셀에 대한 열응력해석을 수행하였다. 평균전류밀도가 2000 $A/m^2$ 운전에서, 단위전지 열유동에 대한 수치해석적 방법으로 얻어진 온도분포를 토대로 구조해석을 수행하였다. 온도 편차가 매우 미미한 상태 에서 이러한 유체-구조 연성 해석 방법을 통하여 완전 결합된 조건에서 최대등가응력이 전해질은 262.58MPa, 캐소드는 28.55MPa, 애노드는 15.1MPa로 계산되어 전해질에서 가장 높은 응력이 발생함 을 알 수 있었다. 또한, 마찰접합조건인 경우 마찰계수가 증가함에 따라 응력이 증가함을 알 수 있었으며, 이는 셀 내부 물질간의 결합력에 의한 응력이 지배적임을 알 수 있었다.

유체-구조 연성해석을 이용한 원심압축기 운전익단간극과 성능 예측 (Study on the Performance of a Centrifugal Compressor Using Fluid-Structure Interaction Method)

  • 이호림;김창희;양장식;손창민;황윤제;정진희
    • 대한기계학회논문집B
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    • 제40권6호
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    • pp.357-363
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    • 2016
  • 본 연구에서는 날개 두께 분포가 다른 두 임펠러를 이용하여 유체-구조 연성해석을 통해 운전익단간극을 예측하고 임펠러의 변형이 성능에 미치는 영향에 대해 연구하였다. 임펠러는 작동조건에서 작용하는 원심력, 압력, 열 하중의 영향으로 변형이 발생하게 된다. 이로 인해 초기 설계된 익단간극이 비균일하게 변화하는 것을 확인하였다. 특히 임펠러 날개의 선단과 후단에서 가장 큰 익단간극 감소가 발생하였으며, 이로인해 간극누설유동이 19.4% 감소하였다. 또한 운전조건에서 익단간극 감소로 간극누설 유량이 감소하면서 효율은 0.72% 증가하는 것을 확인하였다. 원심압축기 작동조건에서의 정확한 운전익단간극의 예측과 익단간극의 변화가 성능에 미치는 영향에 대해서 확인하였다.

운전하중 조건에서 소형 풍력 발전기용 사출 나선형 블레이드 구조특성 평가 (Structural Characteristics Evaluation of the Injection Spiral Blade Used in Small Wind Turbines under Operating Conditions)

  • 길영욱;조영관;지호성;양형근;백준호;제덕근;정호승;박상후
    • 한국기계가공학회지
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    • 제19권2호
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    • pp.38-46
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    • 2020
  • The purpose is to evaluate the structural characteristics of 750 mm diameter injection spiral blades under various operating conditions. A fiber-glass reinforced polypropylene material was employed to the injection blades, and mechanical tests on two kinds of glass-reinforced polypropylene were performed to evaluate the mechanical properties and to select a suitable candidate material. Also, three kinds of spiral blade geometries were studied to observe the influence of fixing rods between blades. For this, structural analyses were conducted to understand the role of fixing rods under a range of rotating speed. In addition, modal analysis was performed to confirm the resonance in the operating speed range. One-way fluid-structure interaction (FSI) analysis was carried out to know its mechanical integrity under dangerous wind speed conditions. Through this work, the structural characteristics of the proposed spiral blade geometries were studied under various operating conditions, and the requirements of mechanical properties of blades were determined.

디퓨저 베인에 기인한 공진조건에서의 임펠러 강제진동 및 구조응답 예측 (Forced Vibration and Structural Response Prediction for Impeller in Resonant Conditions due to Diffuser Vanes)

  • 김용세;공동재;신상준;박기훈;임강수
    • 한국추진공학회지
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    • 제22권4호
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    • pp.24-35
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    • 2018
  • 원심압축기 임펠러의 블레이드는 임펠러와 디퓨저 베인 간 상호작용에 의해 발생하는 비정상 유동의 공력가진력이 공진조건에서 주기적으로 임펠러를 가진함에 따라 고주기피로 파손이 발생할 수 있다. 이에 대한 정밀한 구조응답 예측을 위해 유동해석과 구조해석을 각기 수행하여 공력가진력과 주요 공진조건을 도출하였다. 이 후 단일방향의 유체-구조 연성 기반의 강제진동 해석을 수행하고, 결과들을 토대로 고주기피로에 대한 구조 안전도를 평가할 수 있는 수치해석 절차를 구축하였다. 본 논문의 수치해석 절차는 임펠러 초기 설계단계에서 고주기피로 문제를 사전에 방지하는데 기여할 것으로 기대된다.